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Two-Stage Distributed Energy Resources Scheduling via Chance-Constrained AC Optimal Power Flow: A Second-Order Cone Programming Approach

机译:通过机会约束交流最优功率流量调度的两阶段分布式能源:二阶锥形编程方法

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The penetration of distributed energy resources (DERs) is increasing dramatically. Due to the uncertainty of DERs, the operation of the distribution system is facing higher risks and challenges. To overcome such challenges, a two-stage chance-constrained convex AC optimal power flow (ACOPF) model is proposed in this paper, which can increase the economic efficiency of distribution system operation and manage the intermittency of DERs. In the first stage, a convex second-order cone programming (SOCP)-based ACOPF model is proposed in which the detailed models and limitations of DER, namely, demand response (DR), energy storage units, and rooftop PV systems are modeled to obtain participation ratio of DERs. In the second stage, Monte Carlo simulation is utilized to model the uncertainties of DERs. A probability violation index is introduced to make a trade-off between scheduling more DERs and imposing a higher risk to the distribution system. In this stage, power flow analysis is conducted for each scenario to determine the probability violation index of system. Then, a modified SOCP-based ACOPF is proposed to satisfy the system probability violation criterion. Simulation results illustrate that the proposed two-stage chance-constrained model improves economic efficiency and reliability of real-time operation of the distribution system.
机译:分布式能源(DERS)的渗透率急剧增加。由于DER的不确定性,分配系统的运作面临着更高的风险和挑战。为了克服这些挑战,本文提出了一种两级机会约束的凸交流电流(ACOPF)模型,可以提高分配系统运行的经济效率,并管理DER的间歇性。在第一阶段,提出了基于凸的二阶锥形编程(SOCP)的ACOPF模型,其中模拟了DER,即需求响应(DR),能量存储单元和屋顶PV系统的详细模型和限制获得DER的参与率。在第二阶段,Monte Carlo模拟用于模拟DER的不确定性。介绍概率违规指数,在调度更多的液体之间进行权衡,并对分销系统施加更高的风险。在此阶段,对每个场景进行电力流量分析以确定系统的概率违规指标。然后,提出了一种修改的SOCP的ACOPF来满足系统概率违规标准。仿真结果表明,所提出的两级机会约束模型提高了分配系统实时运行的经济效益和可靠性。

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